Loss of OsMATE6 Function Enhances Drought Resistance Without Yield Penalty by Regulating Stomatal Closure in Rice

警卫室 突变体 耐旱性 生物 野生型 抗旱性 流出 开枪 甲烷磺酸盐 基因 植物 园艺 遗传学
作者
Siyan Chen,Zi‐Sheng Zhang,Zheng‐Yi Zhang,Liangqi Sun,Shijun Fan,Guohua Zhang,Jie Wu,Jin‐Qiu Xia,Jing Yu,Suiwen Hou,Peng Qin,Shigui Li,Cheng‐Bin Xiang
出处
期刊:Plant Cell and Environment [Wiley]
标识
DOI:10.1111/pce.15133
摘要

ABSTRACT Drought is one of the most severe environmental factors limiting plant growth and crop yield, necessitating the identification of genes that enhance drought resistance for crop improvement. Through screening an ethyl methyl sulfonate‐mutagenized rice mutant library, we isolated the PEG tolerance mutant 97‐1 ( ptm97‐1 ), which displays enhanced resistance to osmotic and drought stress, and increased yield under drought conditions. A point mutation in OsMATE6 was identified as being associated with the drought‐resistant phenotype of ptm97‐1 . The role of OsMATE6 in conferring drought resistance was confirmed by additional OsMATE6 knockout mutants. OsMATE6 is expressed in guard cells, shoots and roots and the OsMATE6‐GFP fusion protein predominantly localizes to the plasma membrane. Our ABA efflux assays suggest that OsMATE6 functions as an ABA efflux transporter; mutant protoplasts exhibited a slower ABA release rate compared to the wild type. We hypothesize that OsMATE6 regulates ABA levels in guard cells, influencing stomatal closure and enhancing drought resistance. Notably, OsMATE6 knockout mutants demonstrated greater yields under field drought conditions compared to wild‐type plants, highlighting OsMATE6 as a promising candidate for improving crop drought resistance.
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